A loudspeaker includes a frame; a vibration system having a membrane, a voice coil for driving the membrane to vibrate, and an elastic support piece opposite to the membrane for elastically supporting the voice coil; a magnetic circuit system. The elastic support piece includes a diaphragm and a flexible circuit board fixedly connected to the diaphragm. The diaphragm includes a first connecting part, a second connecting part and a first folding ring part connecting the first connecting part and the second connecting part. The membrane includes a second folding ring part corresponding to the first folding ring part. The first folding ring part is a convex structure bulging toward the membrane, the second folding ring part is a concave structure sinking toward the diaphragm; the diaphragm and the voice coil transmit electrical signals with the external circuits through the flexible circuit board.
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1. A loudspeaker, including
a frame;
a vibration system having a membrane, a voice coil located below the membrane for driving the membrane to vibrate, and an elastic support piece opposite to the membrane for elastically supporting the voice coil;
a magnetic circuit system fixed at the frame;
the elastic support piece including a diaphragm and a flexible circuit board fixedly connected at a lower part of the diaphragm;
the diaphragm comprising a first connecting part fixedly connected at the frame, a second connecting part fixedly connected at the voice coil and a first folding ring part connecting the first connecting part and the second connecting part;
the membrane including a second folding ring part corresponding to the first folding ring part; wherein
the first folding ring part is a convex structure bulging toward the membrane, the second folding ring part is a concave structure sinking toward the diaphragm; the diaphragm and the voice coil transmit electrical signals with the external circuits through the flexible circuit board.
2. The loudspeaker as described in
3. The loudspeaker as described in
4. The loudspeaker as described in
5. The loudspeaker as described in
6. The loudspeaker as described in
7. The loudspeaker as described in
8. The loudspeaker as described in
9. The loudspeaker as described in
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The present disclosure relates to electro-acoustic transducers, more particularly to a loudspeaker.
With the rapid development of mobile communication technology in recent years, consumers are using communication equipment with voice functions more and more, such as portable phones, handheld game consoles, portable computers, laptop computers, multimedia players and other devices that can communicate through public or private communication networks. A traditional loudspeaker structure comprises a frame, a vibration system and a magnetic circuit system accommodated in the frame, the vibration system comprises a membrane, a voice coil and an elastic support piece. However, the existing products with this structure are poor in stability, and are prone to produce swings under the influence of external forces.
Therefore it is necessary to provide an improved loudspeaker for overcoming the above-mentioned disadvantages.
Many aspects of the exemplary embodiment can be better understood with reference to the following drawing. The components in the drawing are not necessarily drawn to scale, the emphasis instead being placed upon clearly illustrating the principles of the present disclosure.
The present disclosure will hereinafter be described in detail with reference to an exemplary embodiments. To make the technical problems to be solved, technical solutions and beneficial effects of the present disclosure more apparent, the present disclosure is described in further detail together with the figure and the embodiment. It should be understood the specific embodiment described hereby is only to explain the disclosure, not intended to limit the disclosure.
As shown in
For the loudspeaker 100 with the structure of this embodiment, the first folding ring part 131a3 of the diaphragm 131a is a convex structure bulging toward the membrane 133, the second folding ring part 133a1 of the membrane 133 is a concave structure sinking toward the direction of the diaphragm 131a. A loudspeaker with this structure has a more stable structure, and is not prone to produce swings under the influence of external forces, therefore its performance is more stable.
As shown in
The loudspeaker 100 with the structure of this embodiment uses a space formed together by the lower plate 142 and the frame 110 fixedly connected to the lower plate 142 to accommodate the magnetic circuit system 140 and the vibration system 130. It has the advantages of simple structure, easy processing, and convenient maintenance.
Wherein, as shown by
Referring to
As shown in
As shown in
To make the loudspeaker 100 with this structure more compact, the upper plate 143 is provided as wound around the periphery of the pole plate 141b and is level with the pole plate 141b.
As shown in
As shown in
In addition, the loudspeaker 100 with this structure also comprises a top cover 150 provided as a cover over the membrane 133, which will encapsulate the vibration system 130 and the magnetic circuit system 140 in an accommodation space formed by the frame 110 and the lower plate 142.
For the loudspeaker 100 with the structure of this embodiment, its stacked structure is adjusted to a structure of concave membrane 133+voice coil 131a+convex diaphragm 132+flexible circuit board 131b, this structure can effectively restrain the swing of the loudspeaker 100 in low frequency, effectively increase the maximum low frequency output sound pressure of a micro loudspeaker, improve the low frequency tone quality, and at the same time improve the fall resistance and performance stability of the finished products.
In the second aspect, the disclosure provides an electronic device, which includes a loudspeaker, and the loudspeaker comprises a loudspeaker 100 described above.
The electronic device of the disclosure includes the loudspeaker 100 with the structure described above, and the stacked structure of the loudspeaker 100 is adjusted to a structure of concave membrane 133+voice coil 132+positive folding ring diaphragm 131a+flexible circuit board 131b, this structure can effectively restrain the swing of the loudspeaker 100 in low frequency, effectively increase the maximum low frequency output sound pressure of a micro loudspeaker, improve the low frequency tone quality, at the same time improve the fall resistance and performance stability of the finished products, and increase the service life of the electronic devices.
It is to be understood, however, that even though numerous characteristics and advantages of the present exemplary embodiment have been set forth in the foregoing description, together with details of the structures and functions of the embodiment, the disclosure is illustrative only, and changes may be made in detail, especially in matters of shape, size, and arrangement of parts within the principles of the invention to the full extent indicated by the broad general meaning of the terms where the appended claims are expressed.
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